Kakurai Maki, Monteforte Rossella, Suto Hajime, Tsai Mindy, Nakae Susumu, Galli Stephen J
Department of Pathology, L-235, Stanford University School of Medicine, 300 Pasteur Dr., Stanford, CA 94305-5324, USA.
Am J Pathol. 2006 Nov;169(5):1713-21. doi: 10.2353/ajpath.2006.060602.
In humans, lesions of contact eczema or atopic dermatitis can exhibit increases in epidermal nerves, but the mechanism resulting in such nerve elongation are not fully understood. We found that contact hypersensitivity reactions to oxazolone in mice were associated with significant increases in the length of nerves in the epidermis and dermis. Using genetically mast cell-deficient c-kit mutant mice selectively repaired of their dermal mast cell deficiency with either wild-type or tumor necrosis factor (TNF)-deficient mast cells, we found that mast cells, and mast cell-derived TNF, significantly contributed to the elongation of epidermal and dermal PGP 9.5+ nerves and dermal CGRP+ nerves, as well as to the inflammation observed at sites of contact hypersensitivity in response to oxazolone. Moreover, the percentage of mast cells in close proximity to dermal PGP 9.5+ nerve fibers was significantly higher in wild-type mice and in c-kit mutant mice repaired of their dermal mast cell deficiency by the adoptive transfer of wild-type mast cells than in TNF-deficient mice or in TNF-/- mast cell-engrafted c-kit mutant mice. These observations show that mast cells, and mast cell-derived TNF, can promote the elongation of cutaneous nerve fibers during contact hypersensitivity in the mouse.
在人类中,接触性湿疹或特应性皮炎的皮损可表现为表皮神经增多,但其导致神经伸长的机制尚未完全明确。我们发现,小鼠对恶唑酮的接触性超敏反应与表皮和真皮中神经长度的显著增加有关。通过用野生型或肿瘤坏死因子(TNF)缺陷型肥大细胞选择性修复基因性肥大细胞缺陷的c-kit突变小鼠的真皮肥大细胞缺陷,我们发现肥大细胞以及肥大细胞衍生的TNF对表皮和真皮中PGP 9.5+神经以及真皮中CGRP+神经的伸长,以及对恶唑酮诱导的接触性超敏反应部位所观察到的炎症,均有显著作用。此外,野生型小鼠以及通过野生型肥大细胞的过继转移修复了真皮肥大细胞缺陷的c-kit突变小鼠中,紧邻真皮PGP 9.5+神经纤维的肥大细胞百分比显著高于TNF缺陷型小鼠或TNF-/-肥大细胞移植的c-kit突变小鼠。这些观察结果表明,在小鼠接触性超敏反应期间,肥大细胞以及肥大细胞衍生的TNF可促进皮肤神经纤维的伸长。